Department of Molecular Toxicology, School of Pharmaceutical Sciences, University of Shizuoka, Shizuoka 422–8526, Japan.
Biol Pharm Bull. 2013;36(7):1216-20. doi: 10.1248/bpb.b12-01030. Epub 2013 Apr 13.
Serum total cholesterol amounts in the stroke-prone hypertensive rat (SHRSP) strain are lower than in the normotensive control strain, Wistar-Kyoto (WKY) rat. To understand the strain difference, constitutive gene expression levels of hepatic cholesterol biosynthetic enzymes in male 8-week-old SHRSP and WKY rats were comparatively examined by DNA microarray and real-time reverse transcription-polymerase chain reaction (RT-PCR) analyses. Of 22 cholesterol biosynthetic enzyme genes, expression levels of 8 genes, Pmvk, Idi1, Fdps, Fdft1, Sqle, Lss, Sc4mol, and Hsd17b7, in SHRSP were less than 50% those of the WKY rats; especially, the expression level of Sqle gene, encoding squalene epoxidase, a rate-limiting enzyme in cholesterol biosynthesis pathway, was about 20%. The gene expression level of sterol regulatory element-binding protein-2 (SREBP-2), which functions as a transcription factor upregulating gene expression of cholesterol biosynthetic enzymes, in SHRSP was about 70% of that in WKY rats. These results demonstrate the possibility that the lower serum total cholesterol level in SHRSP is defined by lower gene expression of most hepatic cholesterol biosynthetic enzymes. In particular, decreased gene expression level of Sqle gene might be the most essential factor. Moreover, the broad range of lowered rates of these genes in SHRSP suggests that the abnormal function and/or expression not only of SREBP-2 but also of one or more other transcription factors for those gene expressions exist in SHRSP.
自发性高血压脑卒中大鼠(SHRSP)的血清总胆固醇水平低于正常血压对照大鼠 Wistar-Kyoto(WKY)大鼠。为了了解这种品系差异,通过 DNA 微阵列和实时逆转录聚合酶链反应(RT-PCR)分析比较了 8 周龄雄性 SHRSP 和 WKY 大鼠肝脏胆固醇生物合成酶的组成型基因表达水平。在 22 个胆固醇生物合成酶基因中,8 个基因(Pmvk、Idi1、Fdps、Fdft1、Sqle、Lss、Sc4mol 和 Hsd17b7)在 SHRSP 中的表达水平低于 WKY 大鼠的 50%;特别是编码胆固醇生物合成途径中限速酶鲨烯环氧化酶的 Sqle 基因的表达水平约为 20%。作为上调胆固醇生物合成酶基因表达的转录因子起作用的固醇调节元件结合蛋白-2(SREBP-2)的基因表达水平在 SHRSP 中约为 WKY 大鼠的 70%。这些结果表明 SHRSP 血清总胆固醇水平较低的原因可能是大多数肝脏胆固醇生物合成酶的基因表达较低。特别是 Sqle 基因表达水平的降低可能是最重要的因素。此外,这些基因的下调幅度广泛,提示 SHRSP 中不仅存在 SREBP-2 的异常功能和/或表达,而且还存在一种或多种其他转录因子对这些基因表达的异常作用。